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Radiation induces age-dependent deficits in cortical synaptic plasticity
Author(s) -
Die Zhang,
Wei Zhou,
Thanh Thai Lam,
Connie C. Weng,
Lawrence F. Bronk,
Duo Ma,
Qiang Wang,
Joseph G. Duman,
Patrick M. Dougherty,
David R. Grosshans
Publication year - 2018
Publication title -
neuro-oncology
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 4.005
H-Index - 125
eISSN - 1523-5866
pISSN - 1522-8517
DOI - 10.1093/neuonc/noy052
Subject(s) - long term potentiation , neuroscience , hippocampal formation , synaptic plasticity , neuroplasticity , prefrontal cortex , memantine , hippocampus , psychology , glutamate receptor , cognitive decline , neuroprotection , medicine , cognition , nmda receptor , dementia , receptor , disease
Radiation-induced cognitive dysfunction is a significant side effect of cranial irradiation for brain tumors. Clinically, pediatric patients are more vulnerable than adults. However, the underlying mechanisms of dysfunction, including reasons for age dependence, are still largely unknown. Previous studies have focused on the loss of hippocampal neuronal precursor cells and deficits in memory. However, survivors may also experience deficits in attention, executive function, or other non-hippocampal-dependent cognitive domains. We hypothesized that brain irradiation induces age-dependent deficits in cortical synaptic plasticity.

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